Thorlabs Inc.
Visit the Edgepass Filters page for pricing and availability information

Edgepass Filters

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OVERVIEW

bandpass filter drawing
 Longpass FiltersShortpass
Filters
Transmission RegionCut-on λ to 2200 nm (Min)0.7λ to Cut-off λ (Unless 0.7λ is < 400 nm, then 400 nm to Cut-off λ)
Rejection Region200 nm to Cut-on λ 1.3 times Cut-off λ

Features

  • Emission Filters in Fluorescence Applications
  • Order Sorting Filters for Photometry
  • Stray Light or Trim Filters to Eliminate any Unwanted Near-Band Radiation
  • Raman Spectroscopy Filters
  • Astronomy Applications

Thorlabs' longpass and shortpass filters are very useful for isolating regions of a spectrum. These edgepass filters feature durable dielectric coatings that withstand the normal cleaning and handling necessary when using any high-quality optical component. Their film construction is essentially a modified quarter-wave stack, using interference effects rather than absorption, to isolate their spectral bands (see the Specs tab for transmission information).

Unlike colored filter glass, the cut-on and cut-off wavelength of these filters will shift to a shorter wavelength as the angle of incidence is increased. As a rule of thumb, when the angle of incidence goes from 0° to 45°, the central wavlength shifts down by about 10%. This feature can be useful in applications where it is desirable to fine tune the location of the cut-on, or cut-off wavelength. In addition, our edgepass filters are hermetically sealed to provide maximum humidity protection, and they can be stacked to create a custom bandpass filter.

Webpage Feature
info iconClicking on this symbol in the tables below will open a window showing transmission and optical density data for the corresponding filter.

We do not recommend removing the filter from its mount, as the filter consists of several layers of glass that are held together with epoxy and the mounting ring. These glass layers are necessary to protect the dielectric coating from the atmosphere; exposure would significantly reduce the filter's transmission efficiency over time.

These longpass and shortpass filters are also available in kits. To request a quote for custom edgepass filters, please e-mail Tech Support or call us at 973-579-7227.

Hide Specs

SPECS

 Longpass FiltersShortpass Filters
Transmission RegionCut-on λ to 2200 nm Mininmum0.7λ to Cut-off λ (Unless 0.7λ is < 400 nm, Then 400 nm to Cut-off λ)
Transmission at Peak*400-700 nm, 80%
750-1000 nm, 75%
>1000 nm, 70%
550-1000 nm, 80%
<550 nm, 70%
Cut-on or Cut-Off Tolerance
(Δλ @ 50% of Peak)
±3 nm (400 to 750 nm)
±15 nm (800 to 1000 nm)
±3 nm (450 to 750 nm)
±15 nm (800 to 1000 nm)
Rejection Region200 nm to Cut-on 1.3 times Cut-off
Transmission in Rejection Region0.01% abs. (OD = 4.0)0.01% abs., 0.0001% avg. (OD = 4.0-6.0)
Cut-off Slope3%, OD = 0.3 to OD = 44-5%, OD = 0.3 to OD = 4
ConstructionImmersed DielectricImmersed Dielectric
Surface Quality (Scratch-Dig)80/50 per Mil-0-13830A80/50 per Mil-0-13830A
Substrate MaterialSoda Lime or EquivalentSoda Lime or Equivalent

*For FEL0400, the Transmission at Peak from 450-2200 nm is 70%; for FEL0450, the Transmission at Peak from 400-2200 nm is 70%.

Optical Density Equation:
Optical Density Equation

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TUTORIAL

Bandpas Filter Layers
Click to Enlarge
The number of layers shown in this schematic is not indicative of the number of layers in an actual bandpass filter. Also the drawing is not to scale.

Bandpass/Edgepass Filter Structure

A bandpass or edgepass filter is created by depositing layers of material on the surface of the substrate. Typically, there are several dielectric stacks separated by spacer layers. The dielectric stack is composed of a large number of alternating layers of low-index and high-index dielectric material. The thickness of each layer in the dielectric stack is λ/4, where λ is the central wavelength of the bandpass filter (i.e. the wavelength with the highest transmittance through the filter). The spacer layers are placed in between the dielectric stacks and have a thickness of (nλ)/2, where n is an integer. The spacer layers can be formed from colored glass, epoxy, dyes, metallic, or dielectric layers. A Fabry-Perot cavity is formed by each spacer layer sandwiched between dielectric stacks. The filter is mounted in an engraved metal ring for protection and ease of handling.

Filter Operation Overview

The constructive interference conditions of a Fabry-Perot cavity allow light at the central wavelength, and a small band of wavelengths to either side, to be transmitted efficiently, while destructive interference prevents the light outside the passband from being transmitted. However, the band of blocked wavelengths on either side of the central wavelength is small. In order increase the blocking range of the filter, materials with broad blocking ranges are used for or coated onto the spacer layers and the substrate. Although these materials effectively block out of band transmission of incident radiation they also decrease the transmission through the filter in the passband.

bandpass filter, forward versus backward transmission
FB800-10 and FB800-40 filters were used to make the measurement that resulted in the plot above.

Filter Orientation

An engraved arrow on the edge of the filter is used to indicate the recommended direction for the transmission of light through the filter. Although the filter will function with either side facing the source, it is better to place the coated side toward the source. This will minimize any thermal effects or possible thermal damage that blocking intense out-of-band radiation might cause due to the absorption of the out-of-band radiation by the substrate or colored glass filter layers. The plot to the right was made by illuminating the filter with a low intensity broadband light and measuring the transmission as a function of wavelength. The plot shows that the transmission direction through the filter has very little effect on the intensity and the spectrum of the light transmitted through the filter. The minimal variation between the forward and backward traces is most likely due to a small shift in the incident angle of the light on the filter introduced when the filter was removed, flipped over, and replaced in the jig.

The filter is intended to be used with collimated light normally incident on the surface of the filter. For uncollimated light or light striking the surface and an angle not normally incident to the surface the central wavelength (wavelength corresponding to peak transmission) will shift toward lower wavelengths and the shape of the transmission region (passband) will change. As a rule of thumb, when the angle of incidence goes from 0° to 45°, the central wavlength shifts down by about 10%. This feature can be useful in applications where it is desirable to fine tune the location of the cut-on, or cut-off wavelength.

Filter Temperature

The central wavelength of the bandpass filter can be tuned slightly (~1 nm over the operating range of the filter) by changing the temperature of the filter. This is primarily due to the slight thermal expansion or contraction of the layers.

Hide Longpass Filters

Longpass Filters

Item # Cut-On Wavelength (nm) Transmission Data*
FEL0400 400 More Info Icon
FEL0450 450 More Info Icon
FEL0500 500 More Info Icon
FEL0550 550 More Info Icon
FEL0600 600 More Info Icon
FEL0650 650 More Info Icon
FEL0700 700 More Info Icon
FEL0750 750 More Info Icon
FEL0800 800 More Info Icon
FEL0850 850 More Info Icon
FEL0900 900 More Info Icon
FEL0950 950 More Info Icon
Item # Cut-On Wavelength (nm) Transmission Data*
FEL1000 1000 More Info Icon
FEL1050 1050 More Info Icon
FEL1100 1100 More Info Icon
FEL1150 1150 More Info Icon
FEL1200 1200 More Info Icon
FEL1250 1250 More Info Icon
FEL1300 1300 More Info Icon
FEL1350 1350 More Info Icon
FEL1400 1400 More Info Icon
FEL1450 1450 More Info Icon
FEL1500 1500 More Info Icon

*Please keep in mind that the data given is typical, and performance may vary from lot to lot, particularly outside of the specified region for each filter.

Part Number
Description
Price
Availability
FEL0400
Longpass Filter, Cut-On Wavelength: 400 nm
$73.00
Today
FEL0450
Longpass Filter, Cut-On Wavelength: 450 nm
$73.00
Today
FEL0500
Longpass Filter, Cut-On Wavelength: 500 nm
$73.00
Today
FEL0550
Longpass Filter, Cut-On Wavelength: 550 nm
$73.00
Today
FEL0600
Longpass Filter, Cut-On Wavelength: 600 nm
$73.00
Today
FEL0650
Longpass Filter, Cut-On Wavelength: 650 nm
$73.00
Today
FEL0700
Longpass Filter, Cut-On Wavelength: 700 nm
$73.00
Today
FEL0750
Longpass Filter, Cut-On Wavelength: 750 nm
$73.00
Today
FEL0800
Longpass Filter, Cut-On Wavelength: 800 nm
$73.00
Today
FEL0850
Longpass Filter, Cut-On Wavelength: 850 nm
$73.00
Today
FEL0900
Longpass Filter, Cut-On Wavelength: 900 nm
$73.00
Today
FEL0950
Longpass Filter, Cut-On Wavelength: 950 nm
$73.00
Today
FEL1000
Longpass Filter, Cut-On Wavelength: 1000 nm
$73.00
Today
FEL1050
Longpass Filter, Cut-On Wavelength: 1050 nm
$73.00
Today
FEL1100
Longpass Filter, Cut-On Wavelength: 1100 nm
$73.00
Today
FEL1150
Longpass Filter, Cut-On Wavelength: 1150 nm
$73.00
Today
FEL1200
Longpass Filter, Cut-On Wavelength: 1200 nm
$73.00
Today
FEL1250
Longpass Filter, Cut-On Wavelength: 1250 nm
$73.00
Today
FEL1300
Longpass Filter, Cut-On Wavelength: 1300 nm
$73.00
Today
FEL1350
Longpass Filter, Cut-On Wavelength: 1350 nm
$73.00
Today
FEL1400
Longpass Filter, Cut-On Wavelength: 1400 nm
$73.00
Today
FEL1450
Longpass Filter, Cut-On Wavelength: 1450 nm
$73.00
Today
FEL1500
Longpass Filter, Cut-On Wavelength: 1500 nm
$73.00
Today
Hide Shortpass Filters

Shortpass Filters

Item # Cut-Off Wavelength (nm) Transmission Data*
FES0450 450 More Info Icon
FES0500 500 More Info Icon
FES0550 550 More Info Icon
FES0600 600 More Info Icon
FES0650 650 More Info Icon
FES0700 700 More Info Icon
Item # Cut-Off Wavelength (nm) Transmission Data*
FES0750 750 More Info Icon
FES0800 800 More Info Icon
FES0850 850 More Info Icon
FES0900 900 More Info Icon
FES0950 950 More Info Icon
FES1000 1000 More Info Icon

*Please keep in mind that the data given is typical, and performance may vary from lot to lot, particularly outside of the specified region for each filter.

Part Number
Description
Price
Availability
FES0450
Shortpass Filter, Cut-Off Wavelength: 450 nm
$73.00
Today
FES0500
Shortpass Filter, Cut-Off Wavelength: 500 nm
$73.00
Today
FES0550
Shortpass Filter, Cut-Off Wavelength: 550 nm
$73.00
Today
FES0600
Shortpass Filter, Cut-Off Wavelength: 600 nm
$73.00
Today
FES0650
Shortpass Filter, Cut-Off Wavelength: 650 nm
$73.00
Today
FES0700
Shortpass Filter, Cut-Off Wavelength: 700 nm
$73.00
Today
FES0750
Shortpass Filter, Cut-Off Wavelength: 750 nm
$73.00
Today
FES0800
Shortpass Filter, Cut-Off Wavelength: 800 nm
$73.00
Today
FES0850
Shortpass Filter, Cut-Off Wavelength: 850 nm
$73.00
Today
FES0900
Shortpass Filter, Cut-Off Wavelength: 900 nm
$73.00
Today
FES0950
Shortpass Filter, Cut-Off Wavelength: 950 nm
$73.00
Today
FES1000
Shortpass Filter, Cut-Off Wavelength: 1000 nm
$73.00
Today
Hide Storage Box for Mounted Filters

Storage Box for Mounted Filters

 Designed to Hold Ø1" Mounted ND Filters
 Protects Optics from Dust and Scratches
 Foam Inserts Separate Optics

The KT01 is designed to hold 10 Ø1" mounted filters.

Part Number
Description
Price
Availability
KT01
Storage Box for Mounted Ø1" Round Optics (Max. Capacity: 10)
$86.70
Today